Manufacturer Part Number
LC4128V-75TN128C
Manufacturer
Lattice Semiconductor
Introduction
CPLD from Lattice's ispMACH® 4000V Series, designed for complex programmable logic applications
Product Features and Performance
In System Programmable for easy configuration and reconfiguration
Fast Delay Time with a maximum of 7.5ns ensures swift signal processing
Low voltage operation ranging from 3V to 3.6V
Features 128 Macrocells and 8 Logic Elements/Blocks for robust design flexibility
Accommodates 92 I/O pins for extensive peripheral interfacing
Can operate reliably at a temperature range of 0°C to 90°C
Product Advantages
Surface Mount technology for a compact footprint and secure PCB integration
High Integration facilitates complex designs without needing multiple devices
Lattice Semiconductor's reputation for durable and reliable CPLDs
Key Technical Parameters
Voltage Supply - Internal: 3V ~ 3.6V
Number of Logic Elements/Blocks: 8
Number of Macrocells: 128
Number of I/O: 92
Operating Temperature Range: 0°C ~ 90°C
Quality and Safety Features
Compliance with international safety standards
Regular quality assessments by Lattice Semiconductor to ensure product reliability
Compatibility
Compatible with numerous standard logic families
128-LQFP package easily integrates into various board designs
Application Areas
Suitable for automotive, industrial, telecommunications, and consumer electronics
Widely used in device interface bridging, control logic, and complex state machines
Product Lifecycle
Active product status suggesting ongoing manufacturer support
Product availability is stable, with no indication of nearing discontinuation
Several Key Reasons to Choose This Product
Speedy performance with a maximum delay time of 7.5 ns
Flexible logic integration with 128 Macrocells and 92 I/O pins
Low voltage operation for energy efficiency
Highly reliable with Lattice Semiconductor quality assurance
Broad compatibility with various industrial applications and logic families
Active lifecycle status ensures continued support and availability